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NEW QUESTION: 1
Your network contains an Active Directory domain named contoso.com. The network contains a file server named Server1 that runs Windows Server 2012 R2. You create a folder named Folder1. You share Folder1 as Share1.
The NTFS permissions on Folder1 are shown in the Folder1 exhibit. (Click the Exhibit button.)
The Everyone group has the Full control Share permission to Folder1.
You configure a central access policy as shown in the Central Access Policy exhibit. (Click the Exhibit button.)
Members of the IT group report that they cannot modify the files in Folder1. You need to ensure that the IT group members can modify the files in Folder1. The solution must use central access policies to control the permissions. Which two actions should you perform? (Each correct answer presents part of the solution.
Choose two.)
A. On Share1, assign the Change Share permission to the IT group.
B. On the Security tab of Folder1, add a conditional expression to the existing permission entry for the IT group.
C. On the Classification tab of Folder1, set the classification to "Information Technology".
D. On the Security tab of Folder1, assign the Modify permission to the Authenticated Users group.
E. On the Security tab of Folder1, remove the permission entry for the IT group.
Answer: C,D
Explanation:
Explanation/Reference:
Explanation:
A: On the Security tab of Folder1, remove the permission entry for the IT group. => tested => it failed of course, users don't even have read permissions anymore D: On Share1, assign the Change share permission to the IT group =>Everyone already has the full control share permission => won't solve the problem which is about the NTFS Read permission E: On the Security tab of Folder1, add a conditional expression to the existing permission entry for the IT group
=> how could a condition, added to a read permission, possibly transform a read to a modify permission? If they had said "modify the permission and add a conditional expression" => ok (even if that's stupid, it works) a condition is Applied to the existing permissions to filter existing access to only matching users or groups so if we Apply a condition to a read permission, the result will only be that less users (only them matching the conditions) will get those read permissions, which actually don't solve the problem neither so only one left:
C: On the Security tab of Folder1, assign the Modify permission to the Authenticated Users group => for sure it works and it's actually the only one which works, but what about security? well i first did not consider this method => "modify" permission for every single authenticated users? But now it looks very clear:
THE MORE RESTRICTIVE PERMISSION IS ALWAYS THE ONE APPLIED!! So "Modify" for Authenticated Users group and this will be filtered by the DAC who only allows IT group. and it matches the current settings that no other user (except admin, creator owner, etc...) can even read the folder. and this link confirms my theory:
http://autodiscover.wordpress.com/2012/09/12/configuring-dynamic-access-controls- andfileclassificationpart4-winservr-2012-dac-microsoft-mvpbuzz/ Configuring Dynamic Access Controls and File Classification Note:
In order to allow DAC permissions to go into play, allow everyone NTFS full control permissions and then DAC will overwrite it, if the user doesn't have NTFS permissions he will be denied access even if DAC grants him access.
And if this can help, a little summary of configuring DAC:
NEW QUESTION: 2
A software development company is using Amazon Aurora MySQL DB clusters for several use cases, including development and reporting. These use cases place unpredictable and varying demands on the Aurora DB clusters, and can cause momentary spikes in latency. System users run ad-hoc queries sporadically throughout the week. Cost is a primary concern for the company, and a solution that does not require significant rework is needed.
Which solution meets these requirements?
A. Change the DB clusters to the burstable instance family.
B. Use existing DB clusters and stop/start the databases on a routine basis using scheduling tools.
C. Upgrade one of the DB clusters to a larger size, and consolidate development and reporting activities on this larger DB cluster.
D. Create new Aurora Serverless DB clusters for development and reporting, then migrate to these new DB clusters.
Answer: A
NEW QUESTION: 3
You have an Azure subscription that contains the storage accounts shown in the following table.
You enable Azure Advanced Threat Protection (ATP) for all the storage accounts.
You need to identify which storage accounts will generate Azure ATP alerts.
Which two storage accounts should you identify? Each correct answer presents part of the solution.
NOTE: Each correct selection is worth one point.
A. storagecontoso5
B. storagecontoso4
C. storagecontoso2
D. storagecontoso3
E. storagecontoso1
Answer: A,E
Explanation:
Explanation/Reference:
Explanation:
Example:
Storage Threat Detection is available for the Blob Service.
References:
https://azure.microsoft.com/en-us/blog/advanced-threat-protection-for-azure-storage-now-in-public- preview/ Testlet 2 Case study Overview ADatum Corporation is a financial company that has two main offices in New York and Los Angeles.
ADatum has a subsidiary named Fabrikam, Inc. that shares the Los Angeles office.
ADatum is conducting an initial deployment of Azure services to host new line-of-business applications and is preparing to migrate its existing on-premises workloads to Azure.
ADatum uses Microsoft Exchange Online for email.
Existing Environment
On-Premises Environment
The on-premises workloads run on virtual machines hosted in a VMware vSphere 6 infrastructure. All the virtual machines are members of an Active Directory forest named adatum.com and run Windows Server
2016.
The New York office uses an IP address space of 10.0.0.0/16. The Los Angeles office uses an IP address space of 10.10.0.0/16.
The offices connect by using a VPN provided by an ISP. Each office has one Azure ExpressRoute circuit that provides access to Azure services and Microsoft Online Services. Routing is implemented by using Microsoft peering.
The New York office has a virtual machine named VM1 that has the vSphere console installed.
Azure Environment
You provision the Azure infrastructure by using the Azure portal. The infrastructure contains the resources shown in the following table.
AG1 has two backend pools named Pool11 and Pool12. AG2 has two backend pools named Pool21 and Pool22.
Requirements
Planned Changes
ADatum plans to migrate the virtual machines from the New York office to the East US Azure region by using Azure Site Recovery.
Infrastructure Requirements
ADatum identifies the following infrastructure requirements:
A new web app named App1 that will access third-parties for credit card processing must be deployed
A newly developed API must be implemented as an Azure function named App2. App2 will use a blob
storage trigger. App2 must process new blobs immediately.
The Azure infrastructure and the on-premises infrastructure must be prepared for the migration of the
VMware virtual machines to Azure.
The sizes of the Azure virtual machines that will be used to migrate the on-premises workloads must be
identified.
All migrated and newly deployed Azure virtual machines must be joined to the adatum.com domain.
AG1 must load balance incoming traffic in the following manner:
1. http://corporate.adatum.com/video/* will be load balanced across Pool11
2. http://corporate.adatum.com/images/* will be load balanced across Pool12 AG2 must load balance incoming traffic in the following manner:
1. http://www.adatum.com will be load balanced across Pool21
2. http://www.fabrikam.com will be load balanced across Pool22
ER1 must route traffic between the New York office and the platform as a service (PaaS) services in
the East US Azure region, as long as ER1 is available.
ER2 must route traffic between the Los Angeles office and the PaaS services in the West US region, as
long as ER2 is available.
ER1 and ER2 must be configured to fail over automatically.
Application Requirements
App2 must be able to connect directly to the private IP addresses of the Azure virtual machines. App2 will be deployed directly to an Azure virtual network.
Inbound and outbound communications to App1 must be controlled by using NSGs.
Pricing Requirements
ADatum identifies the following pricing requirements:
The cost of App1 and App2 must be minimized.
The transactional charges of Azure Storage accounts must be minimized.
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